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Supramolecular assembly strategies using alternate adsorption of polyelectrolytes: applications in pled and LC display devices

机译:使用聚电解质的交替吸附的超分子组装策略:PLED和LC显示装置中的应用

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We present work on the modification, processing, and analysis of ultrathin films for display devices primarily using the supramolecular assembly strategy. This involves the use of various molecular assembly techniques (organic, polymer, metal) inwhich layer order and functionality is achieved at defined length scales approaching that of ultrathin films (a few to several hundred nm thicknesses). The use of alternate polyelectrolyte deposition (APD) is primarily investigated in ultrathin films that have significance in the fabrication of display devices. The first application involves modifying a polymer light emitting diode (PLED) device fabricated using the ITO/MEH-PPV/Ca protocol with polyaniline derivatives. The second is the use of the "command layer" amplification concept and photo-induced alignment using polarized light with ultrathin films of azo dye/polyelectrolytes in a hybrid liquid crystal (LC) cell configuration. Both strategies rely on the use of surface sensitive spectroscopic andmicroscopic techniques to correlate device performance with layer ordering at the molecular level. The concept of functional ultrathin layers for device fabrication and modification is emphasized.
机译:上的修改,处理和超薄为主要使用的超分子组装体的策略显示装置膜的分析中,我们目前的工作。这涉及到使用的inwhich层顺序和功能在限定的长度尺度实现各种分子组装技术(有机,聚合物,金属)接近该超薄薄膜(几到几百纳米的厚度)。使用替代聚电解质沉积(APD)的主要研究了超薄具有在显示装置的制造意义膜。第一应用包括修改的高分子发光二极管使用ITO / MEH-PPV / CA协议与聚苯胺的衍生物(PLED)器件制造。第二个是使用“命令层”扩增的概念和光诱导的取向使用偏振光与超薄偶氮染料/在混合液晶的聚电解质(LC)单元的配置的薄膜。两种策略依赖于使用的表面敏感光谱andmicroscopic技术相关联的器件性能与层序在分子水平。的器件制造和修改功能的超薄层的概念被加重。

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